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Surface Functionalized Amorphous Nanosilica And Microsilica With Nanopores As Promising Tools In Biomedicine

机译:具有纳米孔功能的表面功能化非晶态纳米二氧化硅和微二氧化硅在生物医学中的应用

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Cellular interactions with engineered nanopar-ticles (NPs) are dependent on many properties, inherent to the nanoparticle (viz. size, shape, surface characteristics, degradation, agglomeration/dispersal, and charge, etc.). Modification of the surface reactivity via surface function-alization of the nanoparticles to be targeted seems to be important. Utilization of different surface functionalization methods of nanoparticles is an emerging field of basic and applied nanotechnology. It is well known that many disease-causing organisms induce host lipids and if deprived, their growth is inhibited in vivo. Amorphous nanosilica (ANS) and amorphous microsilica with nano-rnpores (AMS) were prepared by a combination of wet chemistry and high-energy ball milling. Lipophilic moieties were attached to both ANS and AMS via chemical surface functionalization method. Lipophilic ANS and AMS were found to inhibit the growth of Bombyx mori nuclear polyhedrosis virus (BmNPV) and chicken malarial parasites via absorption of silkworm hemolymph and chicken serum lipids/lipoproteins, respectively, in vivo. Therefore, intelligent surface functionalization of NP is an important concept, and its application in curing chicken malaria and BmNPV is presented here. Surface functionalization method reported in this paper might serve as a valuable technology for treating many diseases where pathogens induce host lipid.
机译:与工程化纳米粒子(NPs)的细胞相互作用取决于纳米粒子固有的许多特性(即大小,形状,表面特性,降解,团聚/分散和电荷等)。通过要靶向的纳米颗粒的表面功能化来修饰表面反应性似乎很重要。利用纳米颗粒的不同表面功能化方法是基础和应用纳米技术的新兴领域。众所周知,许多致病生物会诱导宿主脂质,如果被剥夺,它们的生长会在体内受到抑制。通过湿化学与高能球磨相结合制备了非晶态纳米二氧化硅(ANS)和具有纳米孔的非晶态微二氧化硅(AMS)。亲脂性部分通过化学表面官能化方法连接到ANS和AMS上。亲脂性ANS和AMS被发现通过体内蚕蚕淋巴和鸡血清脂质/脂蛋白的吸收分别抑制家蚕核多角体病毒(BmNPV)和鸡疟原虫的生长。因此,NP的智能表面功能化是一个重要的概念,在此介绍了其在治疗鸡疟疾和BmNPV中的应用。本文报道的表面功能化方法可能是治疗病原体诱导宿主脂质的许多疾病的有价值的技术。

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